AI System Uncovers Hidden Forces in Natural Phenomena
A new AI approach has been developed to analyze natural systems and identify hidden forces by working backward from observed data. The technology uses neural networks to infer physical laws that underlie observable behaviors, opening new avenues for scientific discovery.
AI Identifies Unexplored Phenomena in the Fourth State of Matter
Artificial intelligence has uncovered previously unknown physical phenomena within plasma, the fourth state of matter. This breakthrough demonstrates how machine learning can accelerate fundamental scientific research and may lead to advances in energy and material sciences.
MIT Faculty and Alumni Honoured with 2025-26 APS Awards
The American Physical Society (APS) has recognised several MIT faculty and alumni with prizes, awards, and fellowships for their contributions to physics and academic leadership. The honours include significant achievements in quantum information, data science, and the integration of artificial intelligence in scientific applications. These distinctions highlight MIT's ongoing impact in physics and related interdisciplinary fields.
THOR AI Achieves Breakthrough in Solving Century-old Physics Problem
Researchers report that THOR AI has rapidly solved a 100-year-old physics problem, outpacing traditional methods. The achievement highlights artificial intelligence’s expanding role in advanced scientific research. The development signals growing efficiency and potential for automation in tackling complex scientific challenges.
Laser Light Alters Magnetism in New Quantum Material
Researchers have discovered a method for using laser light to manipulate magnetism in a breakthrough quantum material. The findings could pave the way for advances in quantum computing and data storage. The study represents a significant step in controlling quantum properties for future technologies.
Physicists Use Crystal Defects to Connect Quantum Qubits
Physicists have uncovered a novel technique for connecting qubits by leveraging imperfections within crystals. This innovative approach paves the way for more scalable and efficient quantum computing, potentially influencing the future landscape of artificial intelligence. The discovery may accelerate the development of reliable quantum networks and enhance computational power for a range of scientific and AI-driven applications.
Physicists Capture Clear Evidence of Fluid Behavior in Quark-Gluon Plasma
A research team at CERN, including MIT physicists, has recorded the first direct evidence that the universe’s primordial quark-gluon plasma behaves as a dense fluid, not just a collection of particles. By innovatively isolating the wake left by single quarks within the plasma, the results strengthen theoretical predictions and unlock new possibilities for understanding the universe’s earliest instants.
Discovery of Hidden Magnetic Order Sheds Light on Superconductivity
Researchers have identified a previously undetected magnetic order that could have significant implications for understanding and developing superconducting materials. The findings may accelerate the quest for more efficient, room-temperature superconductors and have broad technological impacts.
Physicists Observe Elusive New State of Matter
A team of physicists has successfully observed a novel, intermediate state of matter—a breakthrough shedding new light on quantum phenomena and potentially informing advanced AI computations. The discovery, relevant for both theoretical physics and the future of material sciences, underscores the power of combining machine learning techniques with traditional experimental research.
Pablo Jarillo-Herrero Awarded BBVA Foundation Frontiers of Knowledge Prize for 'Magic Angle' Graphene Discovery
MIT professor Pablo Jarillo-Herrero has been honoured with the 2025 BBVA Foundation Frontiers of Knowledge Award in Basic Sciences, alongside Texas researcher Allan MacDonald, for pioneering work on the 'magic angle' in stacked graphene layers. Their discoveries have transformed our understanding of quantum materials, laying the foundation for potential advances in superconductivity and industrial technology.